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Improving the performance of thermal management system for electric and hybrid electric vehicles by adding an ejector

机译:通过增加喷射器来提高电动和混合动力汽车热管理系统的性能

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摘要

For electric and hybrid electric vehicles, a battery thermal management system (BTMS) is an essential component to maintain a proper operating temperature for the battery pack. In this paper, a modem BTMS involving an evaporator (for cooling passenger cabinet) and a chiller (for cooling battery pack) is investigated under different cooling temperatures. Three systems are studied in which (a) the refrigerant lines coming from the chiller and evaporator have the same temperature (for the basic system), or they have different temperatures to be connected by (b) the mixing chamber, or (c) an ejector for a suggested novel system. For a mixing-chamber based system, the results show that the refrigerant charge decreases by 12% compared to the basic system leading to improving the coefficient of performance (COP) by 4.7%. Altematively, the ejector can efficiently be used instead of the mixing chamber. One of the advantages for the use of ejector is to increase the inlet pressure of the compressor, resulting in minimizing the required power input. Therefore, COP improvement is found to be in a range of 7.17%-77.9%, compared to the basic system under the investigated conditions. The refrigerant charge and the rejected heat by the condenser decrease by 12% and 14.4%, respectively.
机译:对于电动和混合动力电动汽车,电池热管理系统(BTMS)是维持电池组正常工作温度的重要组件。在本文中,研究了在不同的冷却温度下,包括蒸发器(用于冷却乘客车厢)和冷却器(用于冷却电池组)的现代BTMS。研究了三种系统,其中(a)来自冷却器和蒸发器的制冷剂管线具有相同的温度(对于基本系统),或者它们具有不同的温度,以便通过(b)混合室或(c)建议的新型系统的弹出器。对于基于混合室的系统,结果表明,与基本系统相比,制冷剂充注量减少了12%,从而使性能系数(COP)提高了4.7%。或者,可以有效地使用喷射器代替混合室。使用喷射器的优点之一是增加压缩机的入口压力,从而使所需的功率输入最小化。因此,与所研究条件下的基本体系相比,COP改进范围为7.17%-77.9%。冷凝器的制冷剂充入量和排出的热量分别减少了12%和14.4%。

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